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Topological electronic bands in crystalline solids

Strongly Correlated Electrons 2023-09-28 v2 Quantum Physics

Abstract

Topology is now securely established as a means to explore and classify electronic states in crystalline solids. This review provides a gentle but firm introduction to topological electronic band structure suitable for new researchers in the field. I begin by outlining the relevant concepts from topology, then give a summary of the theory of non-interacting electrons in periodic potentials. Next, I explain the concepts of the Berry phase and Berry curvature, and derive key formulae. The remainder of the article deals with how these ideas are applied to classify crystalline solids according to the topology of the electronic states, and the implications for observable properties. Among the topics covered are the role of symmetry in determining band degeneracies in momentum space, the Chern number and Z2 topological invariants, surface electronic states, two- and three-dimensional topological insulators, and Weyl and Dirac semimetals

Keywords

Cite

@article{arxiv.2307.16258,
  title  = {Topological electronic bands in crystalline solids},
  author = {Andrew T. Boothroyd},
  journal= {arXiv preprint arXiv:2307.16258},
  year   = {2023}
}

Comments

A pedagogical review aimed at researchers who are new to the field. Comments and corrections welcome

R2 v1 2026-06-28T11:43:50.795Z